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Msx2 Prevents Stratified Squamous Epithelium Formation in the Enamel Organ

机译:Msx2防止搪瓷器官中的分层鳞状上皮形成。

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摘要

Tooth enamel is manufactured by the inner enamel epithelium of the multilayered enamel organ. Msx2 loss-of-function mutation in a mouse model causes an abnormal accumulation of epithelial cells in the enamel organ, but the underlying mechanism by which Msx2 regulates amelogenesis is poorly understood. We therefore performed detailed histological and molecular analyses of Msx2 null mice. Msx2 null ameloblasts and stratum intermedium (SI) cells differentiated normally in the early stages of amelogenesis. However, during subsequent developmental stages, the outer enamel epithelium (OEE) became highly proliferative and transformed into a keratinized stratified squamous epithelium that ectopically expressed stratified squamous epithelium markers, including Heat shock protein 25, Loricrin, and Keratin 10. Moreover, expression of hair follicle–specific keratin genes such as Keratin 26 and Keratin 73 was upregulated in the enamel organ of Msx2 mutants. With the accumulation of keratin in the stellate reticulum (SR) region and subsequent odontogenic cyst formation, SI cells gradually lost the ability to differentiate, and the expression of Sox2 and Notch1 was downregulated, leading to ameloblast depolarization. As a consequence, the organization of the Msx2 mutant enamel organ became disturbed and enamel failed to form in the normal location. Instead, there was ectopic mineralization that likely occurred within the SR. In summary, we show that during amelogenesis, Msx2 executes a bipartite function, repressing the transformation of OEE into a keratinized stratified squamous epithelium while simultaneously promoting the development of a properly differentiated enamel organ competent for enamel formation.
机译:牙釉质是由多层牙釉质器官的内部牙釉质上皮制成的。在小鼠模型中,Msx2功能丧失突变会导致搪瓷器官中上皮细胞异常积聚,但对Msx2调节牙釉质形成的潜在机制了解甚少。因此,我们对Msx2 null小鼠进行了详细的组织学和分子分析。 Msx2空成釉细胞和间质层(SI)细胞在成釉的早期阶段正常分化。然而,在随后的发育阶段,外釉质上皮(OEE)高度增殖并转化为角化的分层鳞状上皮,异位表达分层的鳞状上皮标记物,包括热休克蛋白25,洛瑞克林和角蛋白10。在Msx2突变体的釉质器官中,特定于卵泡的角蛋白基因(如Keratin 26和Keratin 73)被上调。随着角蛋白在星状网(SR)区的积累和随后的牙源性囊肿形成,SI细胞逐渐丧失了分化能力,Sox2和Notch1的表达下调,导致成釉细胞去极化。结果,Msx2突变体釉质器官的组织受到干扰,在正常位置无法形成釉质。相反,SR内可能发生了异位矿化。总而言之,我们表明,在牙釉质形成过程中,Msx2执行双功能,抑制OEE向角化分层的鳞状上皮细胞的转化,同时促进能够分化为牙釉质的适当分化的牙釉质器官的发育。

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